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models. Current treatment strategies for HBV are life-long and rarely curative. Finite antiviral and immunomodulatory therapeutic strategies are being pursued for an HBV functional cure to treat the 254
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used by a PhD student, likely starting October 2027, to initiate development of a deep-learning architecture. The refined batch of synthetic data will be used by the PhD student to finalise the deep
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of computational biology, protein language models, structural biology, and immunology. 🎯 Main Missions Build and curate large-scale antigen sequence datasets for training and fine-tuning protein language models
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A post-doctoral position is available to advance the development of a 3D human lymphoid organ model and apply this model to test new mRNA vaccination platforms. The position is fully funded for 2.5
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immunotherapy interventions targeting CD4+ T cells based on recombinant monoclonal antibodies or mRNA-containing lipid nanoparticles. The project will be primarily developed in a pre-clinical murine model of lung
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dynamics during regeneration, aging, and cancer, and how these processes can be modulated. Our research is primarily conducted in vivo. We combine genetic mouse models (lineage tracing, conditional
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models, flow cytometry, confocal microscopy and unbiased approaches such as single cells transcriptomics, spatial transcriptomics and epigenetics to characterize molecular and cellular mechanisms. Using